首页> 外文会议>ASME International Conference on Micro/Nanoscale Heat and Mass Transfer >LOW-DIRECTIVITY QUASI-MONOCHROMATIC THERMAL RADIATION FROM MICROCAVITIES COVERED BY THIN METAL FILM
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LOW-DIRECTIVITY QUASI-MONOCHROMATIC THERMAL RADIATION FROM MICROCAVITIES COVERED BY THIN METAL FILM

机译:薄金属薄膜覆盖的微腔的低尺寸率准单色热辐射

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Here, closed-end microcavity is proposed in which a semi-transparent metal film was formed atop microcavity. The structure shows weak angular dependence as well as quasi-monochromatic absorptance. Au is employed as material of the cavity walls and the covering thin film. Quasi-monochromatic absorption from the structure is observed in numerical simulation. High quality factor (Q factor) is obtained by strong confinement in the closed-end microcavity. Asymmetric and quasi-monochromatic absorption band with a Q factor of ~28 at 1.85 μm was observed. This value was about 4-fold larger than that of the open-end microcavity. Additionally, the closed-end microcavity structure filled with SiO_2 in cavity exhibits isotropic and quasi-monochromatic thermal radiation over a wide solid angle. This result suggests that both quasi-monochromatic and low-directivity absorptance can be realized by using this configuration.
机译:这里,提出了封闭端微腔,其中半透明金属膜形成为微腔。该结构表现出弱角度依赖性以及准单色吸收率。 Au用作腔壁和覆盖薄膜的材料。在数值模拟中观察到从结构的准单色吸收。通过封闭端微腔的强大限制获得高质量因子(Q因子)。观察到具有Q系数〜28的不对称和准单色吸收带在1.85μm处。该值比开口微腔的值大约4倍。另外,填充有SiO_2在腔中的封闭端微腔结构在宽的实心角上表现出各向同性和准单色热辐射。该结果表明,可以通过使用这种配置来实现准单色和低方向性吸收率。

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